CD81 通过阻断 CD274/PD-L1 的选择性自噬降解驱动放射抵抗性胶质母细胞瘤的免疫逃逸
CD81 drives immune evasion in radioresistant glioblastoma by blocking selective autophagic degradation of CD274/PD-L1.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:BTK inhibition enhances immunovirotherapy in glioblastoma via tertiary lymphoid structure modulation.
BTK inhibition enhances immunovirotherapy in glioblastoma via tertiary lymphoid structure modulation.
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胶质母细胞瘤(GBM)是一种高度侵袭性的胶质瘤,对免疫治疗具有耐药性,且预后较差,这在很大程度上归因于其免疫抑制性肿瘤微环境。布鲁顿酪氨酸激酶(BTK)是一种非受体激酶,不仅在致癌信号传导中发挥重要作用,尤其是在肿瘤生长方面,而且还调节肿瘤浸润性髓系细胞的活性,包括脑肿瘤中的树突状细胞、巨噬细胞和小胶质细胞。BTK高表达与胶质瘤患者生存期较差相关。溶瘤单纯疱疹病毒1型(oHSV)衍生的病毒疗法是一种新型治疗策略,已证明对GBM有效;然而,其疗效受到肿瘤微环境的限制。
在本研究中,我们发现BTK主要表达于GBM浸润性髓系细胞中。瘤内注射oHSV不仅促进髓系细胞和T细胞的浸润,而且还激活这些髓系细胞中的BTK,从而限制oHSV在肿瘤细胞中的感染和复制。BTK抑制剂依鲁替尼联合治疗提高了oHSV在人GBM12异种移植模型和同系小鼠GSC005模型中的抗肿瘤疗效。在机制上,BTK抑制增加了oHSV介导的肿瘤细胞死亡(cleaved caspase-3)和细胞毒性CD8+ T细胞浸润,同时减少了肿瘤细胞增殖(Ki-67)。BTK抑制不仅抑制了肿瘤浸润性小胶质细胞和巨噬细胞对oHSV的清除,而且还降低了它们对肿瘤细胞的促侵袭作用。在同系GBM模型中,加入免疫调节剂IDO抑制剂进一步延长了荷瘤小鼠的生存期。单细胞mRNA测序(scRNA-seq)分析表明,联合治疗改变了肿瘤浸润髓系细胞(巨噬细胞和小胶质细胞)和CD8+ T细胞中的关键信号通路。
进一步分析显示,BTK抑制联合或不联合IDO抑制,在瘤内oHSV治疗过程中促进肿瘤浸润性三级淋巴结构(TLS)的形成,随后重塑T细胞、NKT细胞和单核-巨噬细胞群体。这些结果表明,BTK抑制在增强oHSV治疗的抗肿瘤疗效中发挥多方面作用。
Glioblastoma (GBM) is a highly aggressive type of glioma that is resistant to immunotherapy and is associated with poor prognosis, largely due to its immunosuppressive tumor microenvironment. Bruton's tyrosine kinase (BTK) is a non-receptor kinase that not only plays an important role in oncogenic signaling, particularly in tumor growth, but also regulates the activity of tumor-infiltrating myeloid cells, including dendritic cells, macrophages, and microglia in brain tumors. High BTK expression is associated with poor survival in patients with glioma.
Oncolytic herpes simplex virus type 1 (oHSV)-derived virotherapy, a novel treatment strategy, has demonstrated effectiveness against GBM; however, its efficacy is limited by the tumor microenvironment. In this study, we found that BTK is predominantly expressed in GBM-infiltrating myeloid cells.
Intratumoral injection of oHSV not only promotes infiltration of myeloid cells and T cells but also activates BTK in these myeloid cells, thereby limiting oHSV infection and replication in tumor cells. Combination treatment with BTK inhibitor ibrutinib improves anti-tumor efficacy of oHSV in both human GBM12 xenograft and syngeneic murine GSC005 models.
Mechanistically, BTK inhibition increases oHSV-mediated tumor cell death (cleaved caspase-3) and cytotoxic CD8 + T cell infiltration, while decreasing tumor cell proliferation (Ki-67). BTK inhibition not only suppresses oHSV clearance by tumor-infiltrating microglia and macrophages but also reduces their pro-invasive effects on tumor cells.
Addition of IDO inhibitor, an immune modulator, further prolongs survival in tumor-bearing mice in a syngeneic GBM model. Single-cell mRNA sequencing (scRNA-seq) analysis indicates that combination treatment modifies key signaling pathways in both tumor-infiltrating myeloid cells (macrophages and microglia) and CD8 + T cells.
Further analysis shows that BTK inhibition, with or without IDO inhibition, promotes the formation of tumor-infiltrating tertiary lymphoid structures (TLS) during intratumoral oHSV treatment, subsequently remodeling T cell, NKT cell, and monocyte-macrophage populations. These results indicate that BTK inhibition exerts multifaceted effects in enhancing the anti-tumor efficacy of oHSV therapy.
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